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A double-edged sword in antiviral defence: ATG7 binding dicer to promote virus replication
by
Ji, Wenxin
, Wu, Yang
, Yang, Qian
, Lin, Jian
, Fu, Mei
, Wang, Chenlu
, Xiong, Ningna
, Zhu, Junpeng
, Li, Zhixin
, Wu, Yaotang
in
Animals
/ Antiviral drugs
/ ATG7
/ Autophagy
/ Autophagy-Related Protein 7 - genetics
/ Autophagy-Related Protein 7 - metabolism
/ Avian flu
/ Biochemistry
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ birds
/ Bronchitis
/ Cell Biology
/ DEAD-box RNA Helicases - metabolism
/ Dicer
/ Dogs
/ H9N2
/ Humans
/ Infections
/ Infectious bronchitis virus
/ Infectious bronchitis virus - physiology
/ Infectious bursal disease
/ Infectious bursal disease virus
/ Infectious bursal disease virus - physiology
/ Influenza
/ Influenza A virus
/ Influenza A Virus, H9N2 Subtype - physiology
/ Life Sciences
/ Madin Darby Canine Kidney Cells
/ Original
/ Original Article
/ Replication
/ Ribonuclease III - genetics
/ Ribonuclease III - metabolism
/ RNA
/ RNA Interference
/ RNA viruses
/ RNA-mediated interference
/ RNAi
/ Up-regulation
/ viral load
/ Virus Replication
/ Viruses
2025
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A double-edged sword in antiviral defence: ATG7 binding dicer to promote virus replication
by
Ji, Wenxin
, Wu, Yang
, Yang, Qian
, Lin, Jian
, Fu, Mei
, Wang, Chenlu
, Xiong, Ningna
, Zhu, Junpeng
, Li, Zhixin
, Wu, Yaotang
in
Animals
/ Antiviral drugs
/ ATG7
/ Autophagy
/ Autophagy-Related Protein 7 - genetics
/ Autophagy-Related Protein 7 - metabolism
/ Avian flu
/ Biochemistry
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ birds
/ Bronchitis
/ Cell Biology
/ DEAD-box RNA Helicases - metabolism
/ Dicer
/ Dogs
/ H9N2
/ Humans
/ Infections
/ Infectious bronchitis virus
/ Infectious bronchitis virus - physiology
/ Infectious bursal disease
/ Infectious bursal disease virus
/ Infectious bursal disease virus - physiology
/ Influenza
/ Influenza A virus
/ Influenza A Virus, H9N2 Subtype - physiology
/ Life Sciences
/ Madin Darby Canine Kidney Cells
/ Original
/ Original Article
/ Replication
/ Ribonuclease III - genetics
/ Ribonuclease III - metabolism
/ RNA
/ RNA Interference
/ RNA viruses
/ RNA-mediated interference
/ RNAi
/ Up-regulation
/ viral load
/ Virus Replication
/ Viruses
2025
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A double-edged sword in antiviral defence: ATG7 binding dicer to promote virus replication
by
Ji, Wenxin
, Wu, Yang
, Yang, Qian
, Lin, Jian
, Fu, Mei
, Wang, Chenlu
, Xiong, Ningna
, Zhu, Junpeng
, Li, Zhixin
, Wu, Yaotang
in
Animals
/ Antiviral drugs
/ ATG7
/ Autophagy
/ Autophagy-Related Protein 7 - genetics
/ Autophagy-Related Protein 7 - metabolism
/ Avian flu
/ Biochemistry
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ birds
/ Bronchitis
/ Cell Biology
/ DEAD-box RNA Helicases - metabolism
/ Dicer
/ Dogs
/ H9N2
/ Humans
/ Infections
/ Infectious bronchitis virus
/ Infectious bronchitis virus - physiology
/ Infectious bursal disease
/ Infectious bursal disease virus
/ Infectious bursal disease virus - physiology
/ Influenza
/ Influenza A virus
/ Influenza A Virus, H9N2 Subtype - physiology
/ Life Sciences
/ Madin Darby Canine Kidney Cells
/ Original
/ Original Article
/ Replication
/ Ribonuclease III - genetics
/ Ribonuclease III - metabolism
/ RNA
/ RNA Interference
/ RNA viruses
/ RNA-mediated interference
/ RNAi
/ Up-regulation
/ viral load
/ Virus Replication
/ Viruses
2025
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A double-edged sword in antiviral defence: ATG7 binding dicer to promote virus replication
Journal Article
A double-edged sword in antiviral defence: ATG7 binding dicer to promote virus replication
2025
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Overview
RNA interference (RNAi) and autophagy are two pivotal biological processes that regulate virus replication. This study explored the complex relationship between autophagy and RNAi in controlling influenza virus replication. Initially, we reported that influenza virus (H9N2) infection increases the viral load and the expression of autophagy markers while inhibiting the RNAi pathway. Subsequent studies employing autophagy enhancer and inhibitor treatments confirmed that avian influenza virus (AIV, H9N2) promotes viral replication by enhancing autophagy pathways. Further analysis revealed that ATG7, an autophagy protein, can interact with dicer to affect its antiviral functions. Finally, we discovered that infection with other avian RNA viruses, including infectious bursal disease virus (IBDV) and infectious bronchitis virus (IBV), induced the upregulation of ATG7, which blocked the RNAi pathway to facilitate virus replication. Our findings suggested that virus infection might trigger the upregulation of autophagy and downregulation of the RNAi pathway, revealing a complex interaction between these two biological processes in the defence against viral replication.
Publisher
Springer International Publishing,Springer Nature B.V,Springer
Subject
/ ATG7
/ Autophagy-Related Protein 7 - genetics
/ Autophagy-Related Protein 7 - metabolism
/ Biomedical and Life Sciences
/ birds
/ DEAD-box RNA Helicases - metabolism
/ Dicer
/ Dogs
/ H9N2
/ Humans
/ Infectious bronchitis virus - physiology
/ Infectious bursal disease virus
/ Infectious bursal disease virus - physiology
/ Influenza A Virus, H9N2 Subtype - physiology
/ Madin Darby Canine Kidney Cells
/ Original
/ Ribonuclease III - metabolism
/ RNA
/ RNAi
/ Viruses
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